• 제목/요약/키워드: Heavy Metal Elimination

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양파 알코올 추출물의 항산화 효과 및 중금속 제거 가능성 연구 (Studies on the Heavy Metals Elimination and Antioxidation of the Onion Ethnolic Extract)

  • 이미경;정영희;남현근
    • 한국응용과학기술학회지
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    • 제16권2호
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    • pp.143-146
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    • 1999
  • In order to study for Onion ethanolic extract on the Heavy Metal Elimination and antioxidation, the peroxide values of oil and eliminated metal were analyzed. The results are follows: It was very effective as a retardant for autoxidation processing of the soybean and olive oil by the Onion ethanolic extract. Quercetin in the Onion ethanolic extract was affected as a ligand for chelating with some metals. Through out this study, Quercetin in the Onion ethanolic extract was affected as eliminator of the Mercury, Lead, and Cadmium.Abstracts In order to study for Onion ethanolic extract on the Heavy Metal Elimination and antioxidation, the peroxide values of oil and eliminated metal were analyzed. The results are follows: It was very effective as a retardant for autoxidation processing of the soybean and olive oil by the Onion ethanolic extract. Quercetin in the Onion ethanolic extract was affected as a ligand for chelating with some metals. Through out this study, quercetin in the Onion ethanolic extract was affected as eliminator of the mercury, lead, and cadmium.

목탄 및 수피탄의 중금속 이온 제거 (Removal of Heavy Metal Ions Using Wood Charcoal and Bark Charcoal)

  • 조태수;이오규;최준원
    • Journal of the Korean Wood Science and Technology
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    • 제35권4호
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    • pp.29-37
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    • 2007
  • 탄화온도 차이에 따른 목질 탄화물의 중금속 흡착성 변화를 알아보기 위하여, 신갈나무(Quercus mongolica) 목부와 낙엽송(Larix kaempferi) 수피분말을 $400{\sim}900^{\circ}C$에서 탄화하였다. 목질 탄화물의 pH는 재료의 종류와 관계없이 탄화온도의 증가와 함께 증가하여 $900^{\circ}C$의 목탄 및 수피탄은 각각 10.8, 10.4를 나다내었다. 또한 탄화 온도 증가와 함께 탄소함량비가 증가하고 동일 탄화온도에서 목탄에 비해 수피탄의 탄소함량비가 큰 경향을 보였다. 액상흡착력을 나타내는 요오드흡착력은 목탄이 수피탄보다 다소 큰 경향을 나타내었다. 이러한 특성을 지닌 목탄과 수피탄에 의한 15ppm의 Cd, Zn 및 Cu 중금속용액에 대한 흡착제거율을 조사한 바, 높은 탄화온도에서 제조된 목탄과 수피탄일수록 높은 중금속제거율을 나타내었으며, 탄화물 종류에 있어서는 목탄이 수피탄 보다 높은 중금속 제거율을 나타내는 경향이 있었다. 특히 목탄의 경우, $500^{\circ}C$ 이상에서 제조된 탄화물 0.2 g의 사용으로 거의 100%에 가까운 제거율을 나타내었다. 한편 흡착질 종류에 있어서의 제거성능에는 다소 차이가 있으며, 본 연구에서 사용한 탄화물의 흡착성은 Cu>Cd>Zn 순으로 높았다. 이는 목탄과 같은 흡착제와 흡착의 대상이 되는 흡착질과의 물리 화학적 상호관계가 흡착에 영향을 주기 때문으로 목탄의 흡착효율을 높이기 위해서는 이에 대한 연구가 더 필요할 것으로 생각된다.

산 처리에 의한 파래(Enteromorpha sp.)의 유해 중금속 제거 (Elimination of Harmful Heavy Metals from Sea Lettuce Enteromorpha sp. with Acid Treatment)

  • 목종수;손광태;이태식;권지영;박큰바위;김지회
    • 한국수산과학회지
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    • 제50권1호
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    • pp.1-7
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    • 2017
  • The elimination of harmful heavy metals (Cd, Cr, and Pb) from sea lettuce Enteromorpha sp. was evaluated in filtered seawater over a pH range of 2.0-4.0 using citric, hydrochloric, and nitric acids. We also evaluated the quality of sea lettuce samples after release of their internal constituents into seawater solutions containing acids. The heavy metals that accumulated in raw sea lettuce after incubation for 3 days in seawater containing Cd, Cr, and Pb were, in descending order, Pb ($120.45{\mu}g/g$), Cr ($86.04{\mu}g/g$), and Cd ($18.35{\mu}g/g$). The rate of elimination of heavy metals from sea lettuce was higher at lower pH for all of the acids used. However, the color of the sea lettuce changed adversely at below pH 2.5. The heavy metals in sea lettuce samples after 10 min in seawater at pH 3.0 containing the three acids were eliminated in the order Pb (42.2-78.0%), Cd (51.8-55.3%), and Cr (14.0-32.8%). The quality of the sea lettuce was not affected when it was incubated for 30 min at pH above 3.0. The maximum elimination of heavy metals from sea lettuce occurred when it was soaked for 10 min in seawater at pH 3.0 containing citric acid.

Removal of Heavy Metals by Cladophora sp. in Batch Culture: The Effect of Wet-mixed Solidified Soil (loess) on Bioremoval Capacities

  • Kim, Jin-Hee;Lee, Kyung-Lak;Kim, Sook-Chan;Kim, Han-Soon
    • 생태와환경
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    • 제40권4호
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    • pp.537-545
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    • 2007
  • The heavy metal removal capacity of filamentous green alga Cladophora sp. cultured together with wet-mixed solidified soil (loess) was tested. A Cladophora sp. was cultured for 5d, with added Chu No. 10 medium, in stream water contaminated by high concentration of heavy metals from a closed mine effluent. Heavy metal ion concentrations of the medium and in algal tissue were measured every day during the experiment. Dissolved metals (Al, Cd, Cu, Fe, Mn, Zn) in medium were rapidly removed (over 90% elimination) within 1-2d when alga and loess were added. Dissolved heavy metals dropped by only 10% when algae were cultured without loess. The Cladophora sp. accumulated much more heavy metals when cultured with loess than when the alga was cultured alone. Cladophora sp. exhibited a maximum uptake capacity for Al ($17,000{\mu}g^{-1}$ algal dry weight). The metal bioremoval capacities of the algae were in the order Al, Fe, Cu, Mn, Zn and Cd. The heavy metal removal capacity of Cladophora sp. showed significant increases when wet-mixed solidified soil was added to culture media.

Heavy Metal Interactions during Accumulation and Elimination of Cadmium and Copper in the Liver of Juvenile Flounder, Paralichthys olivaceus

  • Kim Seong-Gil;Kim Sang-Gyu;Kang Ju-Chan
    • Fisheries and Aquatic Sciences
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    • 제5권4호
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    • pp.295-301
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    • 2002
  • Experiments were carried out to investigate the effects of metal interaction on the accumulation and elimination of Cd and Cu in the liver of flounder, Paralichthys olivaceus, exposed to sub-chronic Cd (0, 5, 10, 50, 100 ${\mu}g/L$)/Cu $(10 {\mu}g/L)$ mixture. Cd exposure resulted in an increased Cd accumulation in the liver of flounder for exposure periods and concentration, and Cd accumulation increased linearly with exposure time. Cu accumulation profiles were similar to those of Cd. Cd concentration in the liver significantly decreased at the 10th depuration period and elimination rate was $66.20\%,\;86.22\%$ in 50 and $100 {\mu}g/L$at the end of depuration periods, respectively. Although, Cu elimination was similar to Cd elimination phase, Cd elimination rate was higher than that of Cu. Co-relationship of Cd and Cu have a positive correlation coefficient r=0.8620 (P<0.001) and support the strong relationship between Cd and Cu accumulation. As increase with the Cd exposure concentration, there were significant (P<0.001) differences between Cd and Cu accumulation.

노화도산 맥반석의 미네랄 용출 및 중금속 제거 효과(I) (Extraction of Minerals and Elimination Effect of Heavy Metals in Water by Nohwado Quartz Porphyry)

  • 황진봉;양미옥;구민선
    • 분석과학
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    • 제9권2호
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    • pp.210-219
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    • 1996
  • 노화도산 맥반석으로부터 미네랄 용출은 맥반석 농도 0.5, 1.0, 1.5, 2.0%를 탈이온수에 첨가하여 3시간 교반했을 때 전 농도에서 음용수 수질기준에 적합한 양질의 식수를 얻을 수 있었다. 노화도산 맥반석의 흡착 및 여과기능은 단일 용액으로 존재하는 중금속에서 제거효율이 가장 좋았으며 그 중에서 특히 납, 구리, 카드뮴, 그리고 비소 등을 실온에서 24시간 진탕했을 때 제거율은 각각 99.9, 99.9, 95.1, 66.5% 였다.

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Recent Progress on Adsorptive Removal of Cd(II), Hg(II), and Pb(II) Ions by Post-synthetically Modified Metal-organic Frameworks and Chemically Modified Activated Carbons

  • Rallapalli, Phani Brahma Somayajulu;Choi, Suk Soon;Ha, Jeong Hyub
    • 공업화학
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    • 제33권2호
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    • pp.133-144
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    • 2022
  • Fast-paced industrial and agricultural development generates large quantities of hazardous heavy metals (HMs), which are extremely damaging to individuals and the environment. Research in both academia and industry has been spurred by the need for HMs to be removed from water bodies. Advanced materials are being developed to replace existing water purification technologies or to introduce cutting-edge solutions that solve challenges such as cost efficacy, easy production, diverse metal removal, and regenerability. Water treatment industries are increasingly interested in activated carbon because of its high adsorption capacity for HMs adsorption. Furthermore, because of its huge surface area, abundant functional groups on surface, and optimal pore diameter, the modified activated carbon has the potential to be used as an efficient adsorbent. Metal-organic frameworks (MOFs), a novel organic-inorganic hybrid porous materials, sparked an interest in the elimination of HMs via adsorption. This is due to the their highly porous nature, large surface area, abundance of exposed adsorptive sites, and post-synthetic modification (PSM) ability. This review introduces PSM methods for MOFs, chemical modification of activated carbons (ACs), and current advancements in the elimination of Pb2+, Hg2+, and Cd2+ ions from water using modified MOFs and ACs via adsorption.

소각재 용융슬래그를 이용한 중금속 흡착특성에 관한 연구 (A Study on Adsorption Characteristics of the Heavy Metals using Melting Slag of Incinerator Ash)

  • 유승철;김환기
    • 상하수도학회지
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    • 제22권4호
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    • pp.413-420
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    • 2008
  • In order to utilize cinder melting slag as a filter media to control the quality of early rainwater, its environmental stability was verified by heavy metal elution experiment and improved by pre-treatment. Possibilities of improving its function as an absorbent was considered. Absorption characteristics of melting slag before and after the pre-treatment were analyzed by heavy metal equilibrium and stationary-phase column experiments, which in turn were analyzed by comparison experiment with activated carbon. As a result of heavy metal elution experiment, every metal item existed in a much lower amount than the criteria or was not detected, implying that there is no problem recycling it. Absorption equilibrium experiment showed that the time for pre-treatment melting slag to reach the equilibrium was reduced, while the absorbed amount was greatly increased. Stationary-phase column experiment assures us that the elimination rate was not changed much by influx rate, pH and the change in packing volume rate, indicating that this melting slag can be used not only as a filter media to control the quality of early rainwater but also in many areas of water-processing.

Development of a Microbe-Zeolite Carrier for the Effective Elimination of Heavy Metals from Seawater

  • Kim, In Hwa;Choi, Jin-Ha;Joo, Jeong Ock;Kim, Young-Kee;Choi, Jeong-Woo;Oh, Byung-Keun
    • Journal of Microbiology and Biotechnology
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    • 제25권9호
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    • pp.1542-1546
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    • 2015
  • The purpose of this study was to investigate the potential of zeolite-supported sulfatereducing bacteria (SRB) in enhancing the removal of Cu2+, Ni2+, and Cr6+ in contaminated seawater. Our results show that SRB-immobilized zeolite carriers can enhance the removal of heavy metals. In addition, heavy metals were generally better removed at conditions of 37°C. Cu2+, Ni2+, and Cr6+ were effectively removed by 98.2%, 90.1%, and 99.8% at 100 parts per million concentration of the heavy metals, respectively. These results indicate that SRB-zeolite carriers hold great potential for use in the removal of cationic heavy metal species from marine environment.